Literature DB >> 19805932

Estimates of the auditory risk from outdoor impulse noise. I: Firecrackers.

Gregory A Flamme1, Kevin Liebe, Adam Wong.   

Abstract

Firecrackers are common impulse noise exposures in the United States. In this study, impulses produced outdoors by consumer firecrackers were recorded, described, and analyzed with respect to the amount of the auditory risk they pose to the unprotected listener under various listening conditions. Risk estimates were obtained using three contemporary damage risk criteria (DRC), including a waveform parameter-based approach (peak SPL and B duration), an energy-based criterion (A-weighted sound exposure level and equivalent continuous level), and a physiological model (the AHAAH model developed by Price and Kalb). Results from these DRC were converted into numbers of maximum permissible unprotected exposures to facilitate comparison. Acoustic characteristics of firecracker impulses varied with the distance, but only subtle differences were observed across firecrackers. Typical peak levels ranged between 171 dB SPL at 0.5 m and 142 dB SPL at 8 m. Estimates of the auditory risk did not differ significantly across firecrackers, but varied with the distance. Vast differences in maximum permissible exposures were observed, and the directions of the differences varied with the level of the impulse. Typical estimates of maximum permissible exposures ranged between 0 and 2 at 0.5 m and between 31 and 227,000 at 8 m. Unprotected exposures to firecracker impulses should be limited or avoided entirely if the firecrackers are ignited in batches within 8 m of the listener. Differences across DRC are inconsequential at 0.5 m, but have substantial implications at distances of 1 m and more.

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Year:  2009        PMID: 19805932     DOI: 10.4103/1463-1741.56216

Source DB:  PubMed          Journal:  Noise Health        ISSN: 1463-1741            Impact factor:   0.867


  6 in total

1.  Measurement of impulse peak insertion loss for four hearing protection devices in field conditions.

Authors:  William J Murphy; Gregory A Flamme; Deanna K Meinke; Jacob Sondergaard; Donald S Finan; James E Lankford; Amir Khan; Julia Vernon; Michael Stewart
Journal:  Int J Audiol       Date:  2011-12-19       Impact factor: 2.117

2.  Temporary threshold shift after impulse-noise during video game play: laboratory data.

Authors:  C Spankovich; S K Griffiths; E Lobariñas; K E Morgenstein; S de la Calle; V Ledon; D Guercio; C G Le Prell
Journal:  Int J Audiol       Date:  2014-03       Impact factor: 2.117

3.  Auditory risk estimates for youth target shooting.

Authors:  Deanna K Meinke; William J Murphy; Donald S Finan; James E Lankford; Gregory A Flamme; Michael Stewart; Jacob Soendergaard; Trevor W Jerome
Journal:  Int J Audiol       Date:  2014-03       Impact factor: 2.117

4.  Impulse noise generated by starter pistols.

Authors:  Deanna K Meinke; Donald S Finan; Jacob Soendergaard; Gregory A Flamme; William J Murphy; James E Lankford; Michael Stewart
Journal:  Int J Audiol       Date:  2013-02       Impact factor: 2.117

Review 5.  Prevention of Noise-Induced Hearing Loss from Recreational Firearms.

Authors:  Deanna K Meinke; Donald S Finan; Gregory A Flamme; William J Murphy; Michael Stewart; James E Lankford; Stephen Tasko
Journal:  Semin Hear       Date:  2017-10-10

6.  Auditory risk of air rifles.

Authors:  James E Lankford; Deanna K Meinke; Gregory A Flamme; Donald S Finan; Michael Stewart; Stephen Tasko; William J Murphy
Journal:  Int J Audiol       Date:  2016       Impact factor: 2.117

  6 in total

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